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Enzymatic degradation of granular potato starch by Microbacterium aurum strain B8.A

机译:金黄色微芽孢杆菌B8.A酶促降解马铃薯颗粒淀粉

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摘要

Microbacterium aurum strain B8.A was isolated from the sludge of a potato starch-processing factory on the basis of its ability to use granular starch as carbon- and energy source. Extracellular enzymes hydrolyzing granular starch were detected in the growth medium of M. aurum B8.A, while the type strain M. aurum DSMZ 8600 produced very little amylase activity, and hence was unable to degrade granular starch. The strain B8.A extracellular enzyme fraction degraded wheat, tapioca and potato starch at 37 °C, well below the gelatinization temperature of these starches. Starch granules of potato were hydrolyzed more slowly than of wheat and tapioca, probably due to structural differences and/or surface area effects. Partial hydrolysis of starch granules by extracellular enzymes of strain B8.A resulted in large holes of irregular sizes in case of wheat and tapioca and many smaller pores of relatively homogeneous size in case of potato. The strain B8.A extracellular amylolytic system produced mainly maltotriose and maltose from both granular and soluble starch substrates; also, larger maltooligosaccharides were formed after growth of strain B8.A in rich medium. Zymogram analysis confirmed that a different set of amylolytic enzymes was present depending on the growth conditions of M. aurum B8.A. Some of these enzymes could be partly purified by binding to starch granules.
机译:从马铃薯淀粉加工厂的污泥中分离出金黄色微细菌菌株B8.A,因为它具有使用粒状淀粉作为碳源和能源的能力。在金黄色葡萄球菌B8.A的生长培养基中检测到水解颗粒状淀粉的细胞外酶,而金黄色葡萄球菌DSMZ 8600型菌株产生的淀粉酶活性非常低,因此不能降解颗粒状淀粉。 B8菌株是一种细胞外酶部分,可在37°C下降解小麦,木薯和马铃薯淀粉,远低于这些淀粉的糊化温度。马铃薯的淀粉颗粒比小麦和木薯淀粉的水解速度更慢,这可能是由于结构差异和/或表面积影响。 B8.A菌株的胞外酶部分水解淀粉颗粒,如果是小麦和木薯,则会产生大小不规则的大孔,如果是马铃薯,则会产生许多大小相对均一的小孔。 B8菌株是一种细胞外淀粉分解系统,主要从粒状和可溶性淀粉底物中产生麦芽三糖和麦芽糖。同样,菌株B8.A在丰富的培养基中生长后,形成了较大的麦芽低聚糖。柱状图分析证实存在不同的淀粉分解酶,这取决于金黄色葡萄球菌B8.A的生长条件。这些酶中的一些可以通过与淀粉颗粒结合而部分纯化。

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